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A Literature Review of the Numerical Analysis of Abdominal Aortic Aneurysms Treated with Endovascular Stent Grafts

机译:血管内支架移植治疗腹主动脉瘤数值分析的文献综述

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摘要

The purpose of this paper is to present the basic principles and relevant advances in the computational modeling of abdominal aortic aneurysms and endovascular aneurysm repair, providing the community with up-to-date state of the art in terms of numerical analysis and biomechanics. Frameworks describing the mechanical behavior of the aortic wall already exist. However, intraluminal thrombus nonhomogeneous structure and porosity still need to be well characterized. Also, although the morphology and mechanical properties of calcifications have been investigated, their effects on wall stresses remain controversial. Computational fluid dynamics usually assumes a rigid artery wall, whereas fluid-structure interaction accounts for artery compliance but is still challenging since arteries and blood have similar densities. We discuss alternatives to fluid-structure interaction based on dynamic medical images that address patient-specific hemodynamics and geometries. We describe initial stresses, elastic boundary conditions, and statistical strength for rupture risk assessment. Special emphasis is accorded to workflow development, from the conversion of medical images into finite element models, to the simulation of catheter-aorta interactions and stent-graft deployment. Our purpose is also to elaborate the key ingredients leading to virtual stenting and endovascular repair planning that could improve the procedure and stent-grafts.
机译:本文的目的是介绍腹主动脉瘤和血管内动脉瘤修复的计算模型的基本原理和相关进展,为社区提供数值分析和生物力学方面的最新技术。描述主动脉壁机械行为的框架已经存在。但是,腔内血栓的非均质结构和孔隙度仍需要很好地表征。同样,尽管已经研究了钙化的形态和力学性能,但它们对壁应力的影响仍然存在争议。计算流体动力学通常假定动脉壁是刚性的,而流体结构相互作用则说明动脉顺应性,但由于动脉和血液具有相似的密度,因此仍然具有挑战性。我们将讨论基于动态医学图像的流体-结构相互作用的替代方法,这些图像可解决患者特定的血液动力学和几何形状。我们描述了破裂应力评估的初始应力,弹性边界条件和统计强度。从医学图像到有限元模型的转换,到导管-主动脉相互作用和支架-移植物部署的模拟,工作流程的开发尤其受到重视。我们的目的还在于详细阐述导致虚拟支架植入和血管内修复计划的关键因素,以改善手术过程和支架植入。

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